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Maximum torque-per-ampere control of a saturated surface-mounted permanent magnet motor

机译:饱和表面安装式永磁电动机的最大每安培转矩控制

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The surface-mounted permanent magnet (SMPM) synchronous motor has high torque density and good dynamic response. Consequently, these machines have found applications in electric/hybrid vehicles, where size and volume are at a premium and dynamic response is important for vehicle performance. In these applications, high torque output from the motor is required for short time duration. The high stator current associated with this mode of operation can induce saturation in portions of the motor magnetic circuit and thus introduce saliency into a normally symmetric machine. This phenomenon can be exploited in order to maximize the torque output of the motor for the same stator current. The case of a 75 kW SMPM machine for automotive application is presented. By taking advantage of the saturation induced reluctance torque, up to 4% extra torque output is produced for the same maximum stator current. The improved performance is predicted using FEM calculations and is verified through experimental results.
机译:表面安装式永磁同步电动机具有高转矩密度和良好的动态响应。因此,这些机器已发现在电动/混合动力车辆中的应用,在电动/混合动力车辆中,尺寸和体积非常重要,动态响应对于车辆性能至关重要。在这些应用中,需要短时间从电动机输出高扭矩。与这种操作模式相关的高定子电流会在电动机磁路的各个部分中引起饱和,从而将显着性引入正常对称的电机中。为了在相同的定子电流下使电动机的转矩输出最大化,可以利用该现象。介绍了用于汽车应用的75 kW SMPM机器的情况。通过利用饱和感应磁阻转矩,对于相同的最大定子电流,可产生高达4%的额外转矩输出。改进的性能可通过FEM计算进行预测,并通过实验结果进行验证。

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